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感知到的精子竞争强度会影响求偶和交配前的精液蛋白产生。

Perceived sperm competition intensity influences seminal fluid protein production prior to courtship and mating.

机构信息

University of Central Florida, Department of Biology, 4000 Central Florida Blvd., Orlando, FL 32816, USA.

出版信息

Evolution. 2011 Feb;65(2):584-90. doi: 10.1111/j.1558-5646.2010.01141.x. Epub 2010 Nov 3.

Abstract

Sperm competition is a potent postcopulatory selective force where sperm from rival males compete to fertilize a limited set of ova. Considering that sperm production is costly, we expect males to strategically allocate sperm in accordance with the level of competition. Accordingly, previous work has examined a male's strategic allocation in terms of sperm number. However, the seminal fluid proteins (Sfps) transferred along with sperm may also play a crucial role in competition. Surprisingly, the strategic allocation of Sfps has remained largely unexplored. Using Drosophila melanogaster, we examined the expression of three seminal fluid and four spermatogenesis genes in response to perceived sperm competition intensity by manipulating male density in a pre-mating and courtship environment. In the pre-mating environment, we found that males modified Sfp ratios by reducing the production of two spfs when potential rivals were present, while one Sfp and all spermatogenesis genes remained unaltered. In the courtship environment, males did not modify spermatogenesis or Sfp production in response to either rival males or female presence. Our data suggest that perceived competition in the pre-mating environment places a significant influence on Sfp allocation, which may be a general trend in promiscuous animal systems with internal fertilization.

摘要

精子竞争是一种强有力的交配后选择力量,其中来自竞争雄性的精子争相使有限数量的卵子受精。考虑到精子的产生是有代价的,我们期望雄性根据竞争水平有策略地分配精子。因此,之前的工作已经研究了雄性在精子数量方面的策略性分配。然而,与精子一起传递的精液蛋白 (Sfps) 也可能在竞争中发挥关键作用。令人惊讶的是,Sfps 的策略性分配在很大程度上仍未得到探索。我们使用黑腹果蝇研究了三个精液和四个精子发生基因在预交配和求偶环境中对感知到的精子竞争强度的表达,通过操纵雄性密度来实现。在交配前的环境中,我们发现当潜在的竞争对手存在时,雄性通过减少两种 spfs 的产生来改变 Sfp 比例,而一种 Sfp 和所有精子发生基因保持不变。在求偶环境中,雄性不会根据竞争对手或雌性的存在来改变精子发生或 Sfp 产生。我们的数据表明,交配前环境中的感知竞争对 Sfp 分配产生了重大影响,这可能是具有内部受精的滥交动物系统的普遍趋势。

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